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Effects of Stress and Temperature on the Permeability of Gas-Saturated Wet Coal

机译:应力与温度对气饱和湿煤渗透性的影响

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摘要

Fracturing and heat injection are promising methods for in situ modification of low-permeability reservoirs to enhance coalbed methane (CBM) recovery. The technical processes enable substantial water residence in the reservoirs and cause rebalance and redistribution of the stress and temperature fields around the wells or boreholes. In this study, a dual-porosity permeability model is established. The coupling effects of variable stresses and temperatures (below 100 ~(°)C) on the permeability evolution of gas-saturated wet coal are also studied. The results show that (1) the mean effective stress and temperature enabled complicated nonlinear decreasing trends in permeability, and sensitivity analysis of input parameters by the random forest method indicates that the effect of stress on permeability was much greater than that of temperature; (2) the relationship between incremental effective stress and permeability can be well expressed by a new function, while initial permeability and variations in thermal cracking and stiffness of the matrix during heating will affect fit coefficients of the function; and (3) as signified by substantial breakthrough in thermal cracks and fractures, permeability evolution during heating consists of phase I and phase II, and the evolution performance in phase I was more complicated as it is controlled by external stress conditions and also related to mutual competition between positive effects (due to thermal volatilization and sorption-induced matrix shrinkage) and negative effects (due to thermal expansion and thermal cracking). Moreover, variability of permeability versus temperature at low deviatoric stress (0 MPa) differed from that at high deviatoric stresses (3–12 MPa). These results would be beneficial for permeability prediction and CBM extraction design.
机译:压裂和热注入是有希望的方法,用于改性低渗透储层以增强煤层气(CBM)回收。技术过程使水库的大量水处理能够在井或钻孔周围的压力和温度场进行重新平衡和再分配。在该研究中,建立了双孔隙率渗透性模型。还研究了可变胁迫和温度(低于100〜(°)C)对气饱和湿煤的渗透演化的耦合效应。结果表明,(1)平均有效应力和温度使得具有随机森林方法的输入参数的透气性敏感性的敏感性分析表明,应力对渗透性的影响远大于温度的影响远大于温度; (2)增量有效应力和渗透性之间的关系可以通过新功能良好地表达,而在加热期间,基质热裂化和刚度的初始渗透性和变化会影响该功能的拟合系数; (3)如热裂纹和裂缝中的大幅突破,加热过程中的渗透性进化由相和II期组成,并且相对于外部压力条件控制的阶段I中的进化性能更加复杂,并且与相互相关的相同积极效应(由于热挥发和吸附诱导的基质收缩)之间的竞争和负效应(由于热膨胀和热裂纹)。此外,低偏离偏离应力(0MPa)处的渗透率与温度的可变性与高偏离偏差应力(3-12MPa)不同。这些结果对于渗透性预测和CBM提取设计是有益的。

著录项

  • 来源
    《Energy & fuels 》 |2020年第11期| 14535-14547| 共13页
  • 作者单位

    Key Laboratory of Deep Coal Resource Mining (CUMT) Ministry of Education of China School of Mines China University of Mining and Technology;

    College of Safety and Emergency Management Engineering Taiyuan University of Technology;

    Key Laboratory of Deep Coal Resource Mining (CUMT) Ministry of Education of China School of Mines China University of Mining and Technology;

    School of Energy and Mining Engineering China University of Mining and Technology (Beijing);

    Key Laboratory of Deep Coal Resource Mining (CUMT) Ministry of Education of China School of Mines China University of Mining and Technology;

    Key Laboratory of Deep Coal Resource Mining (CUMT) Ministry of Education of China School of Mines China University of Mining and Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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